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细菌微环境响应型双通道智能成像引导按需自调控光动力/化学动力协同杀菌与伤口愈合

Bacterial microenvironment-responsive dual-channel smart imaging-guided on-demand self-regulated photodynamic/chemodynamic synergistic sterilization and wound healing.

机构信息

State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

International Joint Laboratory on Food Safety, Jiangnan University, Wuxi 214122, China.

出版信息

Biomater Sci. 2022 May 31;10(11):2907-2916. doi: 10.1039/d2bm00374k.

Abstract

Bacterial infections pose a serious threat to public health. The integration of photodynamic therapy (PDT) and chemodynamic therapy (CDT) has emerged as a promising means to combat bacterial infection. However, most photosensitizers are often in the "always on" activated state and lack bacterial targeting, leading to non-specific damage to normal tissues. Besides, most of the conventional CDT systems are directly complexed with metal ions. The toxicity of excess free metal ions cannot be ignored. Therefore, it is a huge challenge to construct a bacteria-specific activated PDT/CDT synergistic therapy platform to achieve precise sterilization. Herein, we report a bacterial microenvironment-responsive phosphorescence/fluorescence dual-channel smart imaging-guided on-demand self-regulating CDT/PDT theranostic platform for precise sterilization and wound healing. Acid-degradable persistent luminescence nanoparticles were prepared as bacterial microenvironment-responsive phosphorescence imaging units and CDT agents. Piperazine-modified PEG was then introduced as an intelligent targeting and hydrophilic group, which was further bonded with a pH-reversibly-activated fluorescence/PDT-in-one probe to construct the intelligent theranostic platform. The developed platform combines the features of good biocompatibility, prolonged blood circulation, charge-reversed intelligent targetability, dual-channel smart imaging and on-demand self-regulating CDT/PDT effect, holding great potential for precise imaging-guided bacteria-specific synergistic sterilization without side effects.

摘要

细菌感染对公共卫生构成严重威胁。将光动力疗法 (PDT) 和化学动力学疗法 (CDT) 相结合已成为对抗细菌感染的一种有前途的手段。然而,大多数光敏剂通常处于“始终开启”的激活状态,缺乏细菌靶向性,导致对正常组织的非特异性损伤。此外,大多数传统的 CDT 系统直接与金属离子复合。过量游离金属离子的毒性不容忽视。因此,构建细菌特异性激活的 PDT/CDT 协同治疗平台以实现精确杀菌仍然是一个巨大的挑战。在这里,我们报告了一种细菌微环境响应的磷光/荧光双通道智能成像引导按需自调节 CDT/PDT 治疗平台,用于精确杀菌和伤口愈合。制备了酸降解的持续发光纳米颗粒作为细菌微环境响应的磷光成像单元和 CDT 试剂。然后引入哌嗪修饰的 PEG 作为智能靶向和亲水性基团,进一步与 pH 可逆激活的荧光/PDT 一体化探针结合,构建智能治疗平台。所开发的平台结合了良好的生物相容性、延长的血液循环、电荷反转的智能靶向性、双通道智能成像和按需自调节 CDT/PDT 效应等特点,有望实现精确成像引导的细菌特异性协同杀菌,而无副作用。

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